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Subjects

Physics

Electric Field and Electric Field Lines

विद्युत क्षेत्र और विद्युत क्षेत्र रेखाएँ

In this Class 12 Physics topic from Chapter 1, Electric Charges and Fields, students learn how electric charges produce an electric field and how the field is represented using electric field lines. The topic explains field strength, direction, the role of a test charge, and the principle of superposition for multiple charges. Students also study the properties, patterns, and relative density of field lines, including their use in understanding isolated charges and electric dipoles.

Practice questions

01 If the distance from a point charge is halved and the charge magnitude is also halved, how will the electric field change?

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02 In a non-uniform electric field, field lines become closer in one direction. Moving in that direction, how does the field magnitude change?

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03 If field lines in a diagram touch a conductor while running along its surface, what conclusion is correct according to electrostatic equilibrium?

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04 At a point, fields of 5 newton per coulomb eastward and 12 newton per coulomb northward act. What is the magnitude of the resultant field?

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05 If two equal electric fields in opposite directions give zero resultant, what happens if the direction of one is slightly turned?

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06 The density of electric field lines indicates field magnitude. What is the most correct limitation of this statement?

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07 In a field-line diagram, a line crosses itself and forms a closed shape. Why is this unacceptable for an electrostatic field?

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08 For two equal positive charges, at a very far point on the perpendicular bisector, what is the approximate direction of the combined field?

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09 In a region, field lines are equally spaced but gradually curved. What conclusion follows?

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10 A positive test charge experiences zero force at a point. Is it correct to say that there are no source charges around?

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11 The field due to a point charge is 900 newton per coulomb at a distance of 0.2 metre. What will be the field at 0.6 metre?

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12 At a point, electric field vectors due to two charges have the same direction. How is the magnitude of the net field found?

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13 At a point, electric field vectors due to two charges are opposite and unequal in magnitude. What is the direction of the net field?

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14 In a field-line diagram, fewer lines start from positive charge and more lines terminate on negative charge. What does this indicate about net charge?

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15 A field-line diagram has two unequal positive charges. How should lines appear near the larger positive charge?

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16 If an electric field line is curved at a point, how is the field direction at that point decided?

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17 The sign of a point charge is changed while magnitude and distance remain the same. What changes in the field-line diagram?

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18 If field lines terminate on a negative charge and their number is more than the lines starting from positive sources, from where are the extra lines considered to come?

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19 If more electric field lines leave a closed surface than enter it, what sign of net charge inside is indicated?

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20 If the same number of field lines enter and leave a closed surface, what conclusion about net charge inside is appropriate?

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21 Between large parallel plates, field lines are nearly straight and equally spaced. Why may they bend near the edges?

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22 If field-line direction is the same at two points but density is different, which statement about the fields is correct?

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23 In the field of a point charge, all points on a spherical surface are at the same distance from the charge. How is the field magnitude on that surface?

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24 Around a point charge, field magnitude is same at equal distance. Why are the field vectors still not identical?

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25 If the electric field at a point is very large, does it mean that a very large test charge is placed there?

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